Suh D, Wilson D M, Povirk L F
Department of Pharmacology and Toxicology, Medical College of Virginia, Virginia Commonwealth University, Richmond, VA 23298, USA.
Nucleic Acids Res. 1997 Jun 15;25(12):2495-500. doi: 10.1093/nar/25.12.2495.
In order to assess the possible role of human apurinic/apyrimidinic endonuclease (Ape) in double-strand break repair, the substrate specificity of this enzyme was investigated using short DNA duplexes and partial duplexes, each having a single 3'-phosphoglycolate terminus. Phosphoglycolate removal by Ape was detected as a shift in mobility of 5'-end-labeled DNA strands on polyacrylamide sequencing gels, and was quantified by phosphorimaging. Recombinant Ape efficiently removed phosphoglycolates from the 3'-terminus of an internal 1 base gap in a 38mer duplex, but acted more slowly on 3'-phosphoglycolates at a 19 base-recessed 3'-terminus, at an internal nick with no missing bases, and at a double-strand break end with either blunt or 2 base-recessed 3'-termini. There was no detectable activity of Ape toward 3'-phosphoglycolates on 1 or 2 base protruding single-stranded 3'-overhangs. The results suggest that both a single-base internal gap, and duplex DNA on each side of the gap are important binding/recognition determinants for Ape. While Ape may play a role in repair of terminally blocked double-strand breaks, there must also be additional factors involved in removal of at least some damaged 3'-termini, particularly those on 3'-overhangs.
为了评估人脱嘌呤/脱嘧啶内切核酸酶(Ape)在双链断裂修复中的可能作用,使用具有单个3'-磷酸乙醇酸末端的短DNA双链体和部分双链体研究了该酶的底物特异性。通过Ape去除磷酸乙醇酸被检测为聚丙烯酰胺测序凝胶上5'-末端标记的DNA链迁移率的变化,并通过磷光成像进行定量。重组Ape有效地从38聚体双链体内部1个碱基间隙的3'-末端去除磷酸乙醇酸,但对19个碱基凹陷的3'-末端、无缺失碱基的内部切口以及具有平端或2个碱基凹陷的3'-末端的双链断裂末端的3'-磷酸乙醇酸作用较慢。在1或2个碱基突出的单链3'-突出端上,未检测到Ape对3'-磷酸乙醇酸的活性。结果表明,单个碱基的内部间隙以及间隙两侧的双链DNA都是Ape重要的结合/识别决定因素。虽然Ape可能在末端封闭的双链断裂修复中起作用,但在去除至少一些受损的3'-末端,特别是3'-突出端上的那些末端时,必定还涉及其他因素。